CN220421864U - Electronic product electric rack capable of being tiled, folded and folded - Google Patents

Electronic product electric rack capable of being tiled, folded and folded Download PDF

Info

Publication number
CN220421864U
CN220421864U CN202321992941.9U CN202321992941U CN220421864U CN 220421864 U CN220421864 U CN 220421864U CN 202321992941 U CN202321992941 U CN 202321992941U CN 220421864 U CN220421864 U CN 220421864U
Authority
CN
China
Prior art keywords
folding
piece
groove
rotating
rotating shaft
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202321992941.9U
Other languages
Chinese (zh)
Inventor
谢志虎
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Dongguan Juyuan Precision Technology Co ltd
Original Assignee
Dongguan Juyuan Precision Technology Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Dongguan Juyuan Precision Technology Co ltd filed Critical Dongguan Juyuan Precision Technology Co ltd
Priority to CN202321992941.9U priority Critical patent/CN220421864U/en
Application granted granted Critical
Publication of CN220421864U publication Critical patent/CN220421864U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Telephone Set Structure (AREA)

Abstract

The utility model discloses an electronic product electric frame capable of being tiled, folded and folded, which comprises a first folding part, a second folding part, a third folding part, a first connecting part and a second connecting part, wherein a first notch groove is formed in one side edge of the first folding part, a second notch groove is formed in one side edge of the second folding part, a third notch groove is formed in the other side edge of the second folding part, and a fourth notch groove is formed in one side edge of the third folding part; one side of the first connecting part is rotatably arranged in the first notch groove through the first rotating shaft, and the other side of the first connecting part is rotatably arranged in the second notch groove through the second rotating shaft; one side of the second connecting part is movably arranged in the third notch groove through a third rotating shaft, and the other side of the second connecting part is rotatably arranged in the fourth notch groove through a fourth rotating shaft; after the first folding part and the second folding part are rotated, the first folding part, the second folding part and the third folding part form a tiling, folding or folding state, and the folding device has the advantages of convenience in folding, small size and portability.

Description

Electronic product electric rack capable of being tiled, folded and folded
Technical Field
The utility model relates to the technical field of wireless charging, in particular to an electronic product electric frame capable of being tiled, folded and folded.
Background
Many cell-phone folding support also appear in the market, can support and charge cell-phone, wrist-watch and earphone simultaneously. However, the angle of the mobile phone folding bracket is not well fixed, and the mobile phone folding bracket is also inconvenient to fold and carry.
Disclosure of Invention
The utility model aims to solve the defects of the prior art and provides an electronic product electric frame which can be tiled, folded and folded.
The utility model relates to a technical scheme that:
the electronic product electric frame comprises a first folding part, a second folding part, a third folding part, a first connecting part and a second connecting part, wherein a first notch groove is formed in one side edge of the first folding part, a second notch groove is formed in one side edge of the second folding part, a third notch groove is formed in the other side edge of the second folding part, and a fourth notch groove is formed in one side edge of the third folding part; one side of the first connecting part is rotatably arranged in the first notch groove through a first rotating shaft, and the other side of the first connecting part is rotatably arranged in the second notch groove through a second rotating shaft; one side of the second connecting part is rotatably arranged in the third notch groove through a third rotating shaft, and the other side of the second connecting part is rotatably arranged in the fourth notch groove through a fourth rotating shaft; the first rotating shaft is provided with a first damping structure which enables the first folding part to rotate to a certain angle relative to the first connecting part and then continuously rotate, the second rotating shaft is provided with a second damping structure which enables the first connecting part to rotate to a certain angle relative to the second folding part and then continuously rotate, the third rotating shaft is provided with a third damping structure which enables the second folding part to rotate to a certain angle relative to the second connecting part and then continuously rotate, and the fourth rotating shaft is provided with a fourth damping structure which enables the second connecting part to rotate to a certain angle relative to the third folding part; after the first folding part and the second folding part are rotated, the first folding part, the second folding part and the third folding part form a tiling, folding or folding state.
The preferred scheme is that a first magnetic type wireless charging module is arranged in the first folding part, a main board and a third wireless charging module are arranged in the third folding part, and the first magnetic type wireless charging module and the third wireless charging module are respectively connected with the main board.
The preferred scheme is that the second folding portion is equipped with the holding tank, be equipped with supporting part in the holding tank, the supporting part is connected with the holding tank rotation through the fifth pivot, the rotatable holding of supporting part is in the holding tank, the fifth pivot is equipped with and makes the supporting part rotate to the fifth damping structure that continues pivoted behind the certain angle relative second folding portion.
The preferred scheme is that a second wireless charging module is arranged in the supporting part and is connected with the main board.
The second wireless charging module is a second magnetic type wireless charging module.
The preferred scheme is that the third wireless charging module is welded with the main board, and the first magnetic type wireless charging module is connected with the main board through a wire.
The preferred scheme is that the side wall of the third folding part is provided with a charging interface, and the charging interface is connected with the main board.
Preferably, the receiving groove is circular, and the supporting portion is circular.
The first damping structure comprises a first fixing piece, a first rotating piece and a first tightness adjusting piece; a first groove is formed in one side surface of the first fixing piece at intervals, a first bulge matched with the first groove is formed in one surface of the first rotating piece, close to the first fixing piece, one end of the first fixing piece is fixedly connected with the first folding part, the other end of the first fixing piece is movably sleeved outside the first rotating shaft, the first rotating piece is fixedly sleeved outside the first rotating shaft, the first tightness adjusting piece is used for adjusting the relative positions of the first fixing piece and the first rotating piece, and when the first folding part rotates, the first bulge is clamped into or separated from the first groove; the second damping structure comprises a second fixed sheet, a second rotating sheet and a second tightness adjusting sheet; a second groove is formed in one side surface of the second fixing piece at intervals, a second bulge matched with the second groove is formed in one surface of the second rotating piece, close to the second fixing piece, one end of the second fixing piece is fixedly connected with the second folding part, the other end of the second fixing piece is movably sleeved outside the second rotating shaft, the second rotating piece is fixedly sleeved outside the second rotating shaft, the second tightness adjusting piece is used for adjusting the relative positions of the second fixing piece and the second rotating piece, and when the second folding part is rotated, the second bulge is clamped into or separated from the second groove; the third damping structure comprises a third fixed sheet, a third rotating sheet and a third tightness adjusting sheet; a third groove is formed in one side surface of the third fixing piece at intervals, a third bulge matched with the third groove is formed in one surface of the third rotating piece, close to the third fixing piece, one end of the third fixing piece is fixedly connected with the second folding part, the other end of the third fixing piece is movably sleeved outside the third rotating shaft, the third rotating piece is fixedly sleeved outside the third rotating shaft, the third tightness adjusting piece is used for adjusting the relative positions of the third fixing piece and the third rotating piece, and when the second folding part is rotated, the third bulge is clamped into or separated from the third groove; the fourth damping structure comprises a fourth fixed sheet, a fourth rotating sheet and a fourth tightness adjusting sheet; a fourth groove is alternately formed in one side face of the fourth fixing piece, a fourth bulge matched with the fourth groove is formed in one face, close to the fourth fixing piece, of the fourth rotating piece, one end of the fourth fixing piece is fixedly connected with the third folding portion, the other end of the fourth fixing piece is movably sleeved outside the fourth rotating shaft, the fourth rotating piece is fixedly sleeved outside the fourth rotating shaft, the fourth tightness adjusting piece is used for adjusting the relative positions of the fourth fixing piece and the fourth rotating piece, and when the third folding portion is rotated, the fourth bulge is clamped into or separated from the fourth groove.
The preferred scheme is that the supporting part is fixedly connected with the fifth rotating shaft, and the fifth damping structure comprises a fifth fixing piece, a fifth rotating piece and a fifth tightness adjusting piece; a fifth groove is formed in one side face of the fifth fixing piece alternately, a fifth bulge matched with the fifth groove is formed in one face, close to the fifth fixing piece, of the fifth rotating piece, one end of the fifth fixing piece is fixedly connected with the second folding portion, the other end of the fifth fixing piece is movably sleeved outside the fifth rotating shaft, the fifth rotating piece is fixedly sleeved outside the fifth rotating shaft, the fifth tightness adjusting piece is used for adjusting the relative positions of the fifth fixing piece and the fifth rotating piece, and when the supporting portion rotates, the fifth bulge is clamped into or separated from the fifth groove.
In combination with the technical scheme, the utility model has the beneficial effects that: after the first folding part, the second folding part and the third folding part are rotated, the first folding part, the second folding part and the third folding part form a tiling, folding and folding state. When the first folding part, the second folding part and the third folding part form a folding state, the first folding part can play a role in supporting the mobile phone. When the first folding part, the second folding part and the third folding part form a folding state, the volume is small, and the portable folding chair is convenient to carry.
The foregoing description is only an overview of the present utility model, and is intended to be implemented in accordance with the teachings of the present utility model, as well as the preferred embodiments thereof, together with the following detailed description of the utility model, given by way of illustration only, together with the accompanying drawings.
Drawings
FIG. 1 is a perspective view of the present utility model when folded;
FIG. 2 is a perspective view of the present utility model when closed;
FIG. 3 is a perspective view of the present utility model when tiled;
FIG. 4 is a schematic view of the interior of the present utility model when folded;
FIG. 5 is a schematic illustration of the interior of the present utility model when tiled;
FIG. 6 is a second schematic illustration of the interior of the present utility model when tiled;
FIG. 7 is a perspective view of a first fold in the present utility model;
fig. 8 is a perspective view of a second fold in the present utility model;
fig. 9 is a perspective view of a third fold in the present utility model;
FIG. 10 is a perspective view of the first shaft assembled with the first damping structure of the present utility model;
FIG. 11 is an exploded view of a first shaft and a first damping structure of the present utility model;
FIG. 12 is a perspective view of the second shaft assembled with the second damping structure according to the present utility model;
FIG. 13 is an exploded view of a second shaft and a second damping structure according to the present utility model;
FIG. 14 is a perspective view of the third shaft assembled with the third damping structure according to the present utility model;
FIG. 15 is an exploded view of a third shaft and a third damping structure according to the present utility model;
FIG. 16 is a perspective view of the fourth shaft assembled with the fourth damping structure according to the present utility model;
FIG. 17 is an exploded view of a fourth shaft and a fourth damping structure according to the present utility model;
FIG. 18 is a perspective view of a fifth shaft and a fifth damping structure according to the present utility model.
Detailed Description
For the purpose of illustrating the concepts and objects of the utility model, the utility model is further described in connection with the drawings and detailed description that follow.
As shown in fig. 1 to 18, an electronic product electrical rack capable of being tiled, folded and folded comprises a first folding portion 10, a second folding portion 20, a third folding portion 30, a first connecting portion 40, and a second connecting portion 50, wherein a first notch groove 11 is formed in one side edge of the first folding portion 10, a second notch groove 21 is formed in one side edge of the second folding portion 20, a third notch groove 22 is formed in the other side edge of the second folding portion 20, and a fourth notch groove 31 is formed in one side edge of the third folding portion 30; one side of the first connecting part 40 is rotatably arranged in the first notch groove 11 through a first rotating shaft 41, and the other side of the first connecting part is rotatably arranged in the second notch groove 21 through a second rotating shaft 42; one side of the second connecting part 50 is rotatably arranged in the third notch groove 22 through a third rotating shaft 51, and the other side is rotatably arranged in the fourth notch groove 31 through a fourth rotating shaft 52; the first rotating shaft 41 is provided with a first damping structure 43 which enables the first folding part 10 to rotate to a certain angle relative to the first connecting part 40 and then continue to rotate, the second rotating shaft 42 is provided with a second damping structure 44 which enables the first connecting part 40 to rotate to a certain angle relative to the second folding part 20 and then continue to rotate, the third rotating shaft 51 is provided with a third damping structure 53 which enables the second folding part 20 to rotate to a certain angle relative to the second connecting part 50 and then continue to rotate, and the fourth rotating shaft 52 is provided with a fourth damping structure 54 which enables the second connecting part 50 to rotate to a certain angle relative to the third folding part 30; after the first folded portion 10 and the second folded portion 20 are rotated, the first folded portion 10, the second folded portion 20, and the third folded portion 30 form a tiled, folded, or closed state.
As shown in fig. 1 to 18, the first folded portion 10 and the second folded portion 20 may be folded or unfolded from each other; the second folded portion 20 and the third folded portion 30 may be folded or unfolded from each other. When the first folded portion 10 and the second folded portion 20 are unfolded with each other, the second folded portion 20 and the third folded portion 30 are unfolded with each other,
as shown in fig. 1 to 18, the first folding portion 10 may be rotated to an angle with respect to the first connection portion 40, the first damping structure 43 may maintain the first folding portion 10 at the angle with respect to the first connection portion 40, the first folding portion 10 may be rotated 0 to 180 degrees with respect to the first connection portion 40, the first folding portion 10 may be parallel to the first connection portion 40 when the first folding portion 10 is rotated 0 degrees with respect to the first connection portion 40, and the first folding portion 10 may be perpendicular to the first connection portion 40 when the first folding portion 10 is rotated 90 degrees with respect to the first connection portion 40.
As shown in fig. 1 to 18, the second folded portion 20 may be rotated to an angle with respect to the first connection portion 40, the second damping structure 44 may maintain the second folded portion 20 at the angle with respect to the first connection portion 40, the second folded portion 20 may be rotated 0 to 180 degrees with respect to the first connection portion 40, the second folded portion 20 may be parallel to the first connection portion 40 when the second folded portion 20 is rotated 0 degrees with respect to the first connection portion 40, and the second folded portion 20 may be perpendicular to the first connection portion 40 when the second folded portion 20 is rotated 90 degrees with respect to the first connection portion 40.
As shown in fig. 1 to 18, the second folded portion 20 may be rotated to an angle with respect to the second connection portion 50, the third damping structure 53 may maintain the second folded portion 20 at the angle with respect to the second connection portion 50, the second folded portion 20 may be rotated 0 to 180 degrees with respect to the second connection portion 50, the second folded portion 20 may be parallel to the second connection portion 50 when the second folded portion 20 is rotated 0 degrees with respect to the second connection portion 50, and the second folded portion 20 may be perpendicular to the second connection portion 50 when the second folded portion 20 is rotated 90 degrees with respect to the second connection portion 50.
As shown in fig. 1 to 18, the third folded part 30 may be rotated to an angle with respect to the second connection part 50, the fourth damping structure 54 may maintain the third folded part 30 at the angle with respect to the second connection part 50, the third folded part 30 may be rotated 0 to 180 degrees with respect to the second connection part 50, the third folded part 30 may be parallel to the second connection part 50 when the third folded part 30 is rotated 0 degrees with respect to the second connection part 50, and the third folded part 30 may be perpendicular to the second connection part 50 when the third folded part 30 is rotated 90 degrees with respect to the second connection part 50.
As shown in fig. 1 to 18, the first, second and third folded portions 10, 20 and 30 are thus formed into a tiled, folded and folded state after the first, second and third folded portions 10, 20 and 30 are rotated.
As shown in fig. 1 to 18, when the first, second and third folded parts 10, 20 and 30 form a folded state, the first folded part 10 may function to support a mobile phone. When the first folding part 10, the second folding part 20 and the third folding part 30 form a folding state, the volume is small, and the carrying is convenient.
As shown in fig. 1 to 18, a first magnetic type wireless charging module is disposed in the first folding portion 10, a main board 32 and a third wireless charging module are disposed in the third folding portion 30, and the first magnetic type wireless charging module and the third wireless charging module are respectively connected with the main board 32.
As shown in fig. 1 to 18, when the first folding portion 10, the second folding portion 20 and the third folding portion 30 form a folded state, the first folding portion 10 may play a role in supporting a mobile phone, the first magnetic type wireless charging module 11 may charge the mobile phone, the third wireless charging module may charge an electronic product, for example, charge the headset, after the first folding portion 10 and the second folding portion 20 are unfolded by a certain angle, the first folding portion 10 and the second folding portion 20 may maintain a relatively fixed state, after the second folding portion 20 and the third folding portion 30 are unfolded by a certain angle, the second folding portion 20 and the third folding portion 30 may maintain a relatively fixed state, and the first folding portion 10, the second folding portion 20 and the third folding portion 30 form a bracket state; when the use is not required, the first folded portion 10 and the second folded portion 20 are folded with each other, the second folded portion 20 and the third folded portion 30 are folded with each other, and the first folded portion 10, the second folded portion 20 and the third folded portion 30 are formed in a folded state by an external force.
As shown in fig. 1 to 18, the second folding portion 20 is provided with a receiving groove 23, a supporting portion 24 is disposed in the receiving groove 23, the supporting portion 24 is rotatably connected with the receiving groove 23 through a fifth rotating shaft 25, the supporting portion 24 is rotatably received in the receiving groove 23, and the fifth rotating shaft 25 is provided with a fifth damping structure 26 that enables the supporting portion 24 to rotate continuously after rotating to a certain angle relative to the second folding portion 20.
As shown in fig. 1 to 18, when the supporting portion 24 is unfolded with respect to the receiving groove 23, the band of the wristwatch can be hung on the supporting portion 24. When the support portion 24 is rotatably received in the receiving groove 23, the present utility model is small in size.
As shown in fig. 1 to 18, a second wireless charging module is disposed in the supporting portion 24, and the second wireless charging module is connected to the motherboard 32. When the supporting portion 24 is unfolded with respect to the receiving groove 23, the watch may be supported on the surface of the supporting portion 24, and the second wireless charging module may charge the watch. The motherboard 32 may control the second wireless charging module to charge externally.
As shown in fig. 1 to 18, the second wireless charging module is a second magnetic wireless charging module. The second magnetic type wireless charging module can adsorb and charge the watch.
As shown in fig. 1 to 18, the third wireless charging module is welded to the main board 32, and the first magnetic wireless charging module is connected to the main board 32 through a wire. The main board 32 may control the third wireless charging module 31 and the first magnetic type wireless charging module 11 to charge the outside.
As shown in fig. 1 to 18, the side wall of the third folded portion 30 is provided with a charging port 12, and the charging port 12 is connected to the main board 32. The charging interface 12 is connected to the main board 32. The charging interface 12 is connected to an external power source.
As shown in fig. 1 to 18, the receiving groove 23 is circular, and the supporting portion 24 is circular.
As shown in fig. 1 to 18, the first damping structure 43 includes a first fixing piece 431, a first rotating piece 432 and a first tightness adjusting piece 433; a first groove 434 is formed in a side surface of the first fixing piece 431, a first protrusion 435 matched with the first groove 434 is formed on a surface, close to the first fixing piece 431, of the first rotating piece 432, one end of the first fixing piece 431 is fixedly connected with the first folding portion 10, the other end of the first fixing piece 431 is movably sleeved outside the first rotating shaft 41, the first rotating piece 432 is fixedly sleeved outside the first rotating shaft 41, and the first tightness adjusting piece 433 is used for adjusting the relative positions of the first fixing piece 431 and the first rotating piece 432, and when the first folding portion 10 is rotated, the first protrusion 435 is clamped into or separated from the first groove 434. When the first folding portion 10 is rotated, the first protrusion 435 is snapped into one of the first grooves 434, at this time, the first folding portion 10 and the first connecting portion 40 are in a relatively fixed state, and when the angle between the first folding portion 10 and the first connecting portion 40 needs to be adjusted, the first folding portion 10 is rotated so that the first protrusion 435 is separated from the first groove 434 and enters the next first groove 434, thereby adjusting the angle between the first folding portion 10 and the first connecting portion 40.
As shown in fig. 1 to 18, the second damping structure 44 includes a second fixing plate 441, a second rotating plate 442 and a second tightness adjusting plate 443; a second groove 444 is alternately arranged on one side surface of the second fixing piece 441, a second protrusion 445 matching with the second groove 444 is arranged on one surface of the second rotating piece 442, which is close to the second fixing piece 441, one end of the second fixing piece 441 is fixedly connected with the second folding portion 20, the other end of the second fixing piece 441 is movably sleeved outside the second rotating shaft 42, the second rotating piece 442 is fixedly sleeved outside the second rotating shaft 42, the second tightness adjusting piece 443 is used for adjusting the relative positions of the second fixing piece 441 and the second rotating piece 442, and when the second folding portion 20 is rotated, the second protrusion 445 is clamped into or separated from the second groove 444; when the first connection portion 40 is rotated, the second protrusion 445 is locked into one of the second grooves 444, and the second folded portion 20 and the first connection portion 40 are in a relatively fixed state, and when the angle between the second folded portion 20 and the first connection portion 40 needs to be adjusted, the first connection portion 40 is rotated so that the second protrusion 445 is separated from the second groove 444 and enters the next second groove 444, thereby adjusting the angle between the second folded portion 20 and the first connection portion 40.
As shown in fig. 1 to 18, the third damping structure 53 includes a third fixing piece 531, a third rotating piece 532 and a third tightness adjusting piece 533; a third groove 534 is alternately arranged on one side surface of the third fixing piece 531, a third protrusion 535 matched with the third groove 534 is arranged on one surface of the third rotating piece 532, which is close to the third fixing piece 531, one end of the third fixing piece 531 is fixedly connected with the second folding portion 20, the other end of the third fixing piece 531 is movably sleeved outside the third rotating shaft 51, the third rotating piece 532 is fixedly sleeved outside the third rotating shaft 51, the third tightness adjusting piece 533 is used for adjusting the relative positions of the third fixing piece 531 and the third rotating piece 532, and when the second folding portion 20 is rotated, the third protrusion 535 is blocked into or separated from the third groove 534; when the second folded portion 20 is rotated, the third protrusion 535 is snapped into one of the third grooves 534, at this time, the second folded portion 20 and the second connection portion 50 are in a relatively fixed state, and when the angle between the second folded portion 20 and the second connection portion 50 needs to be adjusted, the second folded portion 20 is rotated so that the third protrusion 535 is separated from the third groove 534 and enters the next third groove 534, thereby adjusting the angle between the second folded portion 20 and the second connection portion 50.
As shown in fig. 1 to 18, the fourth damping structure 54 includes a fourth fixing plate 541, a fourth rotating plate 542, and a fourth tightness adjusting plate 543; a fourth groove 544 is alternately formed on one side surface of the fourth fixing piece 541, a fourth protrusion 545 matching with the fourth groove 544 is formed on one surface of the fourth rotating piece 542, which is close to the fourth fixing piece 541, one end of the fourth fixing piece 541 is fixedly connected with the third folding portion 30, the other end of the fourth fixing piece 541 is movably sleeved outside the fourth rotating shaft 52, the fourth rotating piece 542 is fixedly sleeved outside the fourth rotating shaft 52, and the fourth tightness adjusting piece 543 is used for adjusting the relative positions of the fourth fixing piece 541 and the fourth rotating piece 542, and when the third folding portion 30 is rotated, the fourth protrusion 545 is blocked into or separated from the fourth groove 544.
As shown in fig. 1 to 18, when the second connection part 50 is rotated, the fourth protrusion 545 is caught in one of the fourth grooves 544, at this time, the third folded part 30 and the second connection part 50 are in a relatively fixed state, and when it is desired to adjust the angle between the third folded part 30 and the second connection part 50, the second connection part 50 is rotated such that the fourth protrusion 545 is separated from the fourth groove 544 and enters the next fourth groove 544, thereby adjusting the angle between the third folded part 30 and the second connection part 50.
As shown in fig. 1 to 18, the first damping structure 43 further includes a plurality of first compression plates 436, the first rotating shaft 41 is provided with a step surface, the plurality of first compression plates 436 are respectively sleeved outside the first rotating shaft 41, one of the first compression plates 436 is compressed on one side of the first fixing plate 431 away from the first groove 434, one surface of the first compression plate 436 contacts with the step surface of the first rotating shaft 41, the other surface contacts with one side of the first fixing plate 431 away from the first groove 434, one first compression plate 436 is arranged between the first rotating plate 432 and the first tightness adjusting plate 433, the first tightness adjusting plate 433 is a nut, the first tightness adjusting plate 433 is in threaded connection with the first rotation, and the first tightness adjusting plate 433 can adjust the distance between the first compression plates 436 and the first fixing plate 431, thereby adjusting tightness between the first rotating plate 432 and the first fixing plate 431.
As shown in fig. 1 to 18, the second damping structure 44 further includes a plurality of second pressing pieces 446, the second rotating shaft 42 is provided with a step surface, the plurality of second pressing pieces 446 are respectively sleeved outside the second rotating shaft 42, one of the second pressing pieces 446 presses one side of the second fixing piece 441 away from the second groove 444, one side of the second pressing piece 446 contacts with the step surface of the second rotating shaft 42, the other side contacts with one side of the second fixing piece 441 away from the second groove 444, one second pressing piece 446 is provided between the second rotating piece 442 and the second tightness adjusting piece 443, the second tightness adjusting piece 443 is a nut, the second tightness adjusting piece 443 is in threaded connection with the second rotation, and the second tightness adjusting piece 443 can adjust the distance between the second pressing piece 446 and the second rotating piece 442 and the second fixing piece 441, thereby adjusting tightness between the second rotating piece 442 and the second fixing piece 441.
As shown in fig. 1 to 18, the third damping structure 53 further includes a plurality of third pressing plates 536, the third rotating shaft 51 is provided with a step surface, the plurality of third pressing plates 536 are respectively sleeved outside the third rotating shaft 51, one of the third pressing plates 536 is pressed on one side of the third fixing plate 531 away from the third groove 534, one surface of the third pressing plate 536 contacts with the step surface of the third rotating shaft 51, the other surface contacts with one side of the third fixing plate 531 away from the third groove 534, one third pressing plate 536 is arranged between the third rotating plate 532 and the third tightness adjusting plate 533, the third tightness adjusting plate 533 is a nut, the third tightness adjusting plate 533 is in threaded connection with the third rotation, and the third tightness adjusting plate 533 can adjust the distance between the third pressing plate 536 and the third rotating plate 532 and the third fixing plate 531, thereby adjusting tightness between the third rotating plate 532 and the third fixing plate 531.
As shown in fig. 1 to 18, the fourth damping structure 54 further includes a plurality of fourth compressing plates 546, the fourth rotating shaft 52 is provided with a step surface, the plurality of fourth compressing plates 546 are respectively sleeved outside the fourth rotating shaft 52, one of the fourth compressing plates 546 is compressed on a side of the fourth fixing plate 541 away from the fourth groove 544, one surface of the fourth compressing plate 546 contacts with the step surface of the fourth rotating shaft 52, the other surface contacts with a side of the fourth fixing plate 541 away from the fourth groove 544, one fourth compressing plate 546 is disposed between the fourth rotating plate 542 and the fourth tightness adjusting plate 543, the fourth tightness adjusting plate 543 is a nut, the fourth tightness adjusting plate 543 is in threaded connection with the fourth rotating plate 543, and the fourth tightness adjusting plate 543 can adjust the distance between the fourth compressing plate 546 and the fourth rotating plate 542 and the fourth fixing plate 541, thereby adjusting tightness between the fourth rotating plate 542 and the fourth fixing plate 541.
As shown in fig. 1 to 18, the supporting portion 24 is fixedly connected with the fifth rotating shaft 24, and the fifth damping structure 26 includes a fifth fixing piece 261, a fifth rotating piece 262 and a fifth tightness adjusting piece 263; a fifth groove 264 is alternately formed on one side surface of the fifth fixing plate 261, a fifth protrusion 265 matching with the fifth groove 264 is formed on one surface of the fifth rotating plate 262, which is close to the fifth fixing plate 261, one end of the fifth fixing plate 261 is fixedly connected with the second folding portion 20, the other end of the fifth fixing plate 261 is movably sleeved outside the fifth rotating shaft 24, the fifth rotating plate 262 is fixedly sleeved outside the fifth rotating shaft 24, the fifth tightness adjusting plate 263 is used for adjusting the relative positions of the fifth fixing plate 261 and the fifth rotating plate 262, and the fifth protrusion 265 is clamped into or separated from the fifth groove 264 when the supporting portion 24 is rotated.
As shown in fig. 1 to 18, the fifth damping structure 26 further includes a plurality of fifth pressing plates 266, the fifth rotating shaft 24 is provided with a step surface, the plurality of fifth pressing plates 266 are respectively sleeved outside the fifth rotating shaft 24, one of the fifth pressing plates 266 presses a side of the fifth fixing plate 261 away from the fifth recess 264, one surface of the fifth pressing plate 266 contacts the step surface of the fifth rotating shaft 24, the other surface contacts a side of the fifth fixing plate 261 away from the fifth recess 264, one fifth pressing plate 266 is disposed between the fifth rotating plate 262 and the fifth tightness adjusting plate 263, the fifth tightness adjusting plate 263 is a nut, the fifth tightness adjusting plate 263 is in threaded connection with the fifth rotation, and the fifth tightness adjusting plate 263 can adjust the distance between the fifth pressing plate 266 and the fifth rotating plate 262 and the fifth fixing plate 261, thereby adjusting tightness between the fifth rotating plate 262 and the fifth fixing plate 261.
The foregoing is a specific embodiment of the utility model, it will be appreciated by those skilled in the art that modifications and variations may be made without departing from the principles of the utility model, and such modifications and variations are to be regarded as being within the scope of the utility model.

Claims (10)

1. The electronic product electric frame capable of being tiled, folded and folded comprises a first folding part, a second folding part and a third folding part, and is characterized by further comprising a first connecting part and a second connecting part, wherein a first notch groove is formed in one side edge of the first folding part, a second notch groove is formed in one side edge of the second folding part, a third notch groove is formed in the other side edge of the second folding part, and a fourth notch groove is formed in one side edge of the third folding part; one side of the first connecting part is rotatably arranged in the first notch groove through a first rotating shaft, and the other side of the first connecting part is rotatably arranged in the second notch groove through a second rotating shaft; one side of the second connecting part is movably arranged in the third notch groove through a third rotating shaft, and the other side of the second connecting part is rotatably arranged in the fourth notch groove through a fourth rotating shaft; the first rotating shaft is provided with a first damping structure which enables the first folding part to rotate to a certain angle relative to the first connecting part and then continuously rotate, the second rotating shaft is provided with a second damping structure which enables the first connecting part to rotate to a certain angle relative to the second folding part and then continuously rotate, the third rotating shaft is provided with a third damping structure which enables the second folding part to rotate to a certain angle relative to the second connecting part and then continuously rotate, and the fourth rotating shaft is provided with a fourth damping structure which enables the second connecting part to rotate to a certain angle relative to the third folding part; after the first folding part and the second folding part are rotated, the first folding part, the second folding part and the third folding part form a tiling, folding or folding state.
2. The electronic product electric rack capable of being tiled, folded and folded according to claim 1, wherein a first magnetic type wireless charging module is arranged in the first folding portion, a main board and a third wireless charging module are arranged in the third folding portion, and the first magnetic type wireless charging module and the third wireless charging module are respectively connected with the main board.
3. The electronic product electric rack capable of being tiled, folded and folded according to claim 2, wherein the second folding portion is provided with a containing groove, a supporting portion is arranged in the containing groove, the supporting portion is rotatably connected with the containing groove through a fifth rotating shaft, the supporting portion is rotatably contained in the containing groove, and the fifth rotating shaft is provided with a fifth damping structure which enables the supporting portion to continue to rotate after rotating to a certain angle relative to the second folding portion.
4. The electronic product electrical rack capable of being tiled, folded and folded according to claim 3, wherein a second wireless charging module is arranged in the supporting part, and the second wireless charging module is connected with the main board.
5. The tileable, foldable, and foldable electronic product frame of claim 4, wherein the second wireless charging module is a second magnetic wireless charging module.
6. The electronic product electrical shelf capable of being tiled, folded and closed according to claim 2, wherein the third wireless charging module is welded with the main board, and the first magnetic wireless charging module is connected with the main board through a wire.
7. The electronic product electrical shelf capable of being tiled, folded and closed according to claim 2, wherein a charging interface is arranged on the side wall of the third folding portion, and the charging interface is connected with the main board.
8. The tileable, collapsible, and foldable electronic product holder of claim 4, wherein the receiving slot is circular and the support portion is circular.
9. The tileable, foldable, and foldable electronic product frame of claim 1, wherein the first damping structure comprises a first fixed sheet, a first rotating sheet, and a first tightness adjustment sheet; a first groove is formed in one side surface of the first fixing piece at intervals, a first bulge matched with the first groove is formed in one surface of the first rotating piece, close to the first fixing piece, one end of the first fixing piece is fixedly connected with the first folding part, the other end of the first fixing piece is movably sleeved outside the first rotating shaft, the first rotating piece is fixedly sleeved outside the first rotating shaft, the first tightness adjusting piece is used for adjusting the relative positions of the first fixing piece and the first rotating piece, and when the first folding part rotates, the first bulge is clamped into or separated from the first groove; the second damping structure comprises a second fixed sheet, a second rotating sheet and a second tightness adjusting sheet; a second groove is formed in one side surface of the second fixing piece at intervals, a second bulge matched with the second groove is formed in one surface of the second rotating piece, close to the second fixing piece, one end of the second fixing piece is fixedly connected with the second folding part, the other end of the second fixing piece is movably sleeved outside the second rotating shaft, the second rotating piece is fixedly sleeved outside the second rotating shaft, the second tightness adjusting piece is used for adjusting the relative positions of the second fixing piece and the second rotating piece, and when the second folding part is rotated, the second bulge is clamped into or separated from the second groove; the third damping structure comprises a third fixed sheet, a third rotating sheet and a third tightness adjusting sheet; a third groove is formed in one side surface of the third fixing piece at intervals, a third bulge matched with the third groove is formed in one surface of the third rotating piece, close to the third fixing piece, one end of the third fixing piece is fixedly connected with the second folding part, the other end of the third fixing piece is movably sleeved outside the third rotating shaft, the third rotating piece is fixedly sleeved outside the third rotating shaft, the third tightness adjusting piece is used for adjusting the relative positions of the third fixing piece and the third rotating piece, and when the second folding part is rotated, the third bulge is clamped into or separated from the third groove; the fourth damping structure comprises a fourth fixed sheet, a fourth rotating sheet and a fourth tightness adjusting sheet; a fourth groove is alternately formed in one side face of the fourth fixing piece, a fourth bulge matched with the fourth groove is formed in one face, close to the fourth fixing piece, of the fourth rotating piece, one end of the fourth fixing piece is fixedly connected with the third folding portion, the other end of the fourth fixing piece is movably sleeved outside the fourth rotating shaft, the fourth rotating piece is fixedly sleeved outside the fourth rotating shaft, the fourth tightness adjusting piece is used for adjusting the relative positions of the fourth fixing piece and the fourth rotating piece, and when the third folding portion is rotated, the fourth bulge is clamped into or separated from the fourth groove.
10. The electronic product electric frame capable of being tiled, folded and folded according to claim 3, wherein the supporting part is fixedly connected with a fifth rotating shaft, and the fifth damping structure comprises a fifth fixing plate, a fifth rotating plate and a fifth tightness adjusting plate; a fifth groove is formed in one side face of the fifth fixing piece alternately, a fifth bulge matched with the fifth groove is formed in one face, close to the fifth fixing piece, of the fifth rotating piece, one end of the fifth fixing piece is fixedly connected with the second folding portion, the other end of the fifth fixing piece is movably sleeved outside the fifth rotating shaft, the fifth rotating piece is fixedly sleeved outside the fifth rotating shaft, the fifth tightness adjusting piece is used for adjusting the relative positions of the fifth fixing piece and the fifth rotating piece, and when the supporting portion rotates, the fifth bulge is clamped into or separated from the fifth groove.
CN202321992941.9U 2023-07-26 2023-07-26 Electronic product electric rack capable of being tiled, folded and folded Active CN220421864U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321992941.9U CN220421864U (en) 2023-07-26 2023-07-26 Electronic product electric rack capable of being tiled, folded and folded

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321992941.9U CN220421864U (en) 2023-07-26 2023-07-26 Electronic product electric rack capable of being tiled, folded and folded

Publications (1)

Publication Number Publication Date
CN220421864U true CN220421864U (en) 2024-01-30

Family

ID=89647148

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321992941.9U Active CN220421864U (en) 2023-07-26 2023-07-26 Electronic product electric rack capable of being tiled, folded and folded

Country Status (1)

Country Link
CN (1) CN220421864U (en)

Similar Documents

Publication Publication Date Title
CN213637748U (en) A light and small satellite communication portable station
CN102686064B (en) Portable electronic apparatus casing and portable electric appts thereof
US12381970B2 (en) Magnetic type mobile phone holder
KR20130094402A (en) Desk top-type universal dock
CN117834768A (en) A mobile phone holder
CN220421864U (en) Electronic product electric rack capable of being tiled, folded and folded
CN211209740U (en) Portable folding mobile phone support
CN222423321U (en) A three-in-one wireless charging stand
CN210372732U (en) Support device with charging function
WO2022077612A2 (en) Vehicle-mounted wireless charging bracket
CN212298314U (en) Supporting device for portable electronic equipment and wireless charging supporting device
CN104917226A (en) Hidden mobile phone support mobile power supply
CN222916075U (en) Wireless folding support that charges
CN211830239U (en) Foldable multifunctional charging seat
CN211930281U (en) Multifunctional charger baby
CN113137545A (en) Supporting device for portable electronic equipment and wireless charging supporting device
CN211399195U (en) Supporting device for portable electronic equipment and wireless charging supporting device
CN219145058U (en) Folding portable wireless charging frame
CN219801924U (en) Mobile power supply
CN223502605U (en) A foldable 3-in-1 wireless charger
CN222089319U (en) Portable charging support
CN223942445U (en) A three-in-one wireless charging device
CN222423280U (en) A foldable wireless charger supporting 360° rotation
CN223693720U (en) A foldable wireless charger
CN221428626U (en) Wireless charging device

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant